Handles SCG deactivation-to-activation by keeping or switching to the right BWP, improving terminal communication reliability and response speed.
Dynamic comb offset and cyclic shift hopping reduce multi-TRP SRS interference, improving channel quality assessment accuracy.
A centralized controller adapts interference feedback timing to guide RAN resource avoidance, improving spectral efficiency and UE QoS.
Selecting channel access type from sidelink SCS, gap, and detection inputs helps terminals use shared COT more reliably and efficiently.
Merging SL-PRS and data in the same PSSCH resource reduces allocation overhead while preserving reliable, low-latency sidelink positioning.
Coordinated transmit and receive beam setup enables accurate uplink time-of-arrival measurements for 5G UE positioning.
When multiple TRPs schedule overlapping transmissions, collision indication and adaptive backoff improve throughput and cut latency.
A single SRI field in S-DCI maps SRS resource combinations to panel-specific spatial filters for flexible multi-TRP PUSCH transmission.
UE-reported Doppler offsets let cooperative TRPs adjust coherent joint transmission, keeping CSI fresher without heavier reporting overhead.
RRC-based msgA PUSCH hopping settings improve 2-step random access reliability while limiting signaling and configuration overhead.
Role-specific DCI limits let a UE decode PDCCH across dual-role scheduling cells without missing detection in carrier aggregation.
DCI-guided selection of TRP-specific SRS resources lets a UE schedule PUSCH to multiple TRPs with higher reliability and lower signaling overhead.
Scheduled sync messages let battery IoT nodes join mesh networks with minimal radio-on time, lower power use, and fewer collisions.
Segmented PSSCH resource types help LTE and NR sidelinks coexist with fewer sensing conflicts and more efficient shared resource use.
Time-domain rotation coefficients let UEs separate overlapping multi-TRP reference signals, improving tracking and channel measurements.
DCI indicates two TCI states for multiple PDSCHs, helping UEs improve beam management and resource use with manageable control overhead.
On-off control activates collaborative UE data forwarding only when needed to cut interference and power use while preserving MIMO uplink gains.
Odd and even subcarrier separation with distinct CSD values helps simultaneous uplink transmissions avoid unintentional beamforming interference.
TDRA schedules non-overlapping TB repetitions across multiple TRPs, improving 5G NR reliability, coverage, and soft combining efficiency.